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VMware 3V0-12.26 Exam Syllabus Topics:
| Section | Objectives |
|---|---|
| Install, Configure, and Administer VCF Design Elements | |
| VMware Cloud Foundation Products and Solutions | |
| Troubleshoot and Optimize VMware Cloud Foundation Architecture | |
| IT Architectures, Technologies, Standards | |
| Plan and Design VMware Cloud Foundation Solutions | - Design conceptual, logical, and physical solutions - Architect for availability, performance, security, and recoverability - Translate business requirements into technical architecture |
VMware Advanced VMware Cloud Foundation 9.0 Architect Sample Questions:
An architect is designing a vSphere Kubernetes Service (VKS) solution that provides high availability for VKS Clusters.
The environment contains:
* One Workload Domain
* Three Clusters
* Six ESX hosts in each Cluster
* One vSphere Namespace across three vSphere Zones
The solution must provide cluster-level failure tolerance. In the event that one cluster goes offline, cluster- level failure tolerance must still be in place.
Which VKS Cluster design solution fits this requirement?
- A. Map each vSphere Zone to FailureDomain within the NodePools.
- B. VKS Cluster worker nodes are automatically balanced across vSphere Zones.
- C. Use a Service type NodePort with Antrea.
- D. Use vSphere High Availability to restart the worker nodes.
Correct Answer: A 🗳️
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An architect wants to track and alert on combined network and CPU consumption as a percentage for each Virtual Machine (VM). The following formula is to be used:
Utilization = (% CPU + % Network) / 2
Which design decision meets the requirements?
- A. Design an Alert Definition using a Super Metric.
- B. Design a Notification Definition using a Super Metric.
- C. Design an Alert Definition using Calculated Metrics.
- D. Design a Notification Definition using Calculated Metrics.
Correct Answer: A 🗳️
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Match the definitions to the terms for MoSCoW ratings by dragging and dropping the Term on the left to the Definition on the right.
Correct Answer:

Explanation:
Term
Correct Definition
Must Have
Non-negotiable.
Should Have
Important but are not necessary to success.
Could Have
Desirable but not necessary for success.
Won ' t Have
Will not be delivered as part of this scope of work.
The MoSCoW prioritization method classifies requirements according to how critical they are to the success and scope of a solution.
A Must Have requirement is non-negotiable . Failure to satisfy it means the solution does not meet an essential business or technical requirement.
A Should Have requirement is important and normally expected, but the project can still succeed without it if necessary. Such requirements may be deferred when schedule, cost, or resource constraints demand prioritization.
A Could Have requirement is desirable but has lower business impact. These capabilities are implemented when time and resources permit and can be removed from the current delivery with comparatively little effect on overall success.
A Won ' t Have requirement is explicitly excluded from the current scope. It is not necessarily permanently rejected; it may be reconsidered in a later phase or release.
For VCF architecture work, MoSCoW helps convert workshop findings into prioritized requirements and prevents optional functionality from competing with mandatory architectural objectives.
Study Guide References/Topics: Requirements Gathering; MoSCoW Prioritization; Conceptual Design; Business and Technical Requirements; Scope Management.
An architect has been assigned to gather business requirements for a new VMware Cloud Foundation (VCF) solution from the client stakeholders and subject matter experts.
Which three factors should the architect discuss with the customer to determine any potential impact on the business requirements? (Choose three.)
- A. Existing software product versions
- B. Regulatory Compliance
- C. Organizational structure
- D. Service-level agreements (SLAs)
- E. Storage capacity
- F. Average virtual machine size
Correct Answer: B,C,D 🗳️
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An architect is responsible for designing a VMware Cloud Foundation (VCF) Private Cloud solution. During a requirements gathering workshop, the customer supplied the following information:
* The solution must support the monitoring of all existing workloads.
* There are currently 15,000 virtual machine workloads running within the existing environment.
* All infrastructure components will also be monitored by the solution.
The solution must ensure that the 99.9% uptime Service Level Agreement can be met.
The solution must be resilient to a single fault domain failure.
The following logical design decisions have been made within the design:
* Deploy the VCF Operations cluster following the High Availability Model.
The following table is from the VCF Operations sizing guide:
Small
Medium
Single-Node Object Maximum
10,000
30,000
Single-Node Max Collected Metrics
1,600,000
5,000,000
Maximum Nodes in a cluster
2
8
Multi-Node Object Maximum
6,000
17,000
Multi-Node Max Collected Metrics
1,400,000
4,000,000
Maximum Objects in a Cluster
12,000
136,000
Maximum Metrics in a Cluster
2,800,000
32,000,000
Maximum Nodes for Continuous Availability per Fault Domain
1
4
Given the information above, which three physical design decisions meet the stated requirements? (Choose three.)
- A. Enable High Availability in VCF Operations.
- B. Deploy two small VCF Operations nodes.
- C. Apply a vSphere Distributed Resource Scheduler (DRS) affinity rule to the VCF Operations cluster nodes.
- D. Apply a vSphere Distributed Resource Scheduler (DRS) anti-affinity rule to the VCF Operations cluster nodes.
- E. Deploy four medium VCF Operations nodes.
- F. Enable Continuous Availability in VCF Operations.
Correct Answer: D,E,F 🗳️
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